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NASA's Space Launch System: Deep Space Access for CubeSats

机译:NASA的太空发射系统:CubeSats的深空

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NASA is embarking on a new generation of missions to the Moon, known as the Artemis program. The Agency's new super heavy-lift launch vehicle, the Space Launch System (SLS), is a critical enabling capability for these efforts, which will serve as a proving ground for future crewed expeditions to Mars. SLS is designed to return astronauts to the Moon in the Orion spacecraft and to launch more mass and provide more volume for critical payloads than commercially available vehicles, giving NASA a unique asset for deep space exploration. When performance margin and volume is available, as it is on the first flight, Artemis I (previously Exploration Mission-1), SLS can offer CubeSats access to deep space, beyond Earth's orbit. The Artemis I flight has 13 6U (14 kg) CubeSats manifested, and the Program is currently accepting proposals for 6U and 12U payloads for the Artemis II flight through the agency's CubeSat Launch Initiative (CSLI) program. Proposals from U.S.-based payload developers to fly on Artemis II will be accepted through CSLI until November 4.2019. When ridesharing on SLS deep space missions, CubeSats must demonstrate they will not interfere with primary mission objectives. The 13 Artemis I CubeSats that hail from industry, academia. NASA and its international partners represent an array of exciting deep space science investigations and technology demonstrations that may help inform future Artemis missions. The initial SLS Block 1 vehicle for the Artemis I flight is fully manufactured; several elements are complete and have been delivered to the Exploration Ground Systems (EGS) Program at Kennedy Space Center (KSC), which has responsibility for integrating and launching the SLS and Orion stack. Completed elements of the Artemis I vehicle include the Orion Stage Adapter (OSA), which houses the 13 Artemis I CubeSats. With the Artemis 1 flight hardware and software nearing completion, work is in progress for the second Block 1 launcher, designated for the crewed
机译:美国宇航局正在开始新一代的月球任务,被称为Artemis计划。该机构的新型超重升降机发动车辆,空间发射系统(SLS)是这些努力的关键能力,这将作为未来的救助探险队对火星的探险。 SLS旨在将宇航员返回Orion SpaceCraft中的月亮,并向批判有效载荷提供更多的质量,而不是商业上可用的车辆,为NASA提供深度空间探索的独特资产。当性能裕度和卷可用时,就在第一次飞行时,Artemis I(以前探索Mission-1),SLS可以提供​​立方体进入深度空间,超越地球轨道。 Artemis I Flight有13个6U(14公斤)CubeSats表现出来,该计划目前正在接受艾蒿二世航班的6U和12U有效载荷的建议,通过原子能机构的立方体发布计划(CSLI)计划。从基于U.S.的有效载流开发人员在Artemis II上飞行的提案将通过CSLI接受至11月4.2019。在SLS Deep Space任务上的骑行时,CubeSats必须证明他们不会干扰主要的使命目标。 13 Artemis I Cubeesats来自工业,学术界的行业。美国宇航局及其国际合作伙伴代表了一系列令人兴奋的深度空间科学调查和技术示范,可能有助于通知未来的Artemis任务。初始SLS块1用于Astemis I Flight的车辆是完全制造的;若干元素已完成,并已交付给盖恩迪航天中心(KSC)的勘探地面系统(EGS)程序,这有责任集成和启动SLS和ORION堆栈。 Artemis I车辆的已完成元素包括Orion阶段适配器(OSA),其中包含13个Artemis I CubeSats。通过Artemis 1 Flight Hardeld和Software靠近完成,第二街1个发射器正在进行工作,为船员指定

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